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MK65FN2M0CAC18R 库存 & 价格

NXP MCU 32Bit K65 ARM Cortex M4 RISC 2Mb Flash 1.8V/2.5V/3.3V 169Pin WLCSP T/R
225.41
MK65FN2M0CAC18R
显示的图像仅供参考,应从产品数据表中获得准确的规格。
MK65FN2M0CAC18R NXP
NXP
  • 制造商:
    NXP
  • 制造商型号#:
    MK65FN2M0CAC18R
  • 百芯编号#:
    CM130618345
  • 价格(CNY):
    225.41
  • 百芯库存:
    237
  • 库存地点: 香港
  • 可供应量:
    138 个在库
    此为供应商库存,需要与销售确认
  • 产品类别:
    微控制器,MCU,单片机
  • 产品描述:
    MCU 32Bit K65 ARM Cortex M4 RISC 2Mb Flash 1.8V/2.5V/3.3V 169Pin WLCSP T/R
  • 文档: 3D模型
MK65FN2M0CAC18R 购买 MK65FN2M0CAC18R 库存和价格更新于 2025-06-13 03:50:22
  • 刷新
    器件型号: MK65FN2M0CAC18R
    百芯编号: CM130618345
    制造商: NXP
    封装: WLCSP-169
    价格
    225.41
    总计: 375
    MOQ: 1
    库存地点: 香港
    发货日期: 2025/06/18 (预期 )
  • 购买
    *由于库存数量、价格不断波动,请 联系我们 获取型号最新价格和库存。

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    MK65FN2M0CAC18R 规格 显示相似产品 (99+)
    类型
    描述
    选择
    制造商
    NXP
    类别
    微控制器,MCU,单片机
    3D模型
     3D模型
    引脚数
    169 Pin
    封装
    WLCSP-169
    频率
    180 MHz
    RAM大小
    256 KB
    工作温度(Max)
    85 ℃
    工作温度(Min)
    -40 ℃
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    尺寸 & 包装
    类型
    描述
    工作温度
    -40℃ ~ 85℃
    产品生命周期
    Unknown
    包装方式
    Tape & Reel (TR)
    符合标准
    类型
    描述
    RoHS标准
    RoHS Compliant
    含铅标准
    产品概述
    • Overview
    • The Kinetis® K65 180MHz IEEE® 1588 Ethernet MCUs are built on the Arm® Cortex® -M4F core and are optimized for applications requiring security encryption, tamper detection, large memory densities and low-power processing efficiency. This family offers a High Speed USB with integrated HS USB Physical Transceiver, SDRAM Controller, Full Speed Crystal-less USB support, as well as shares the comprehensive enablement and scalability of the Kinetis portfolio.
    • MoreLess
    • ## Features
    • ### Performance
    • * Arm® Cortex® -M4F core running at 180 MHz with single precision floating point unit and 8KB of Cache
    • * Up to 32-channel DMA for peripheral and memory servicing with reduced CPU loading and faster system throughput, with asynchronous support in Stop mode.
    • * Cross bar switch enables concurrent multi-master bus accesses, increasing bus bandwidth
    • * Independent flash banks allow concurrent code execution and firmware updating with no performance degradation or complex coding routines
    • ### Ultra-Low-Power
    • * Flexible low-power modes with power and clock gating for optimal peripheral activity and recovery times. Run power consumption down to µA/MH and static power consumption down to 9.0 µA with full state retention and <6 µS wakeup. Lowest static mode down to 254 nA (VLLS0).
    • * Full memory and analog operation down to 1.71 volts for extended battery life
    • * Low-leakage wake-up unit with up to seven internal modules and over 20 pins as wake-up sources in low-leakage stop (LLS) and very low-leakage stop (VLLS) modes
    • * Low-power timer for continual system operation in reduced power state
    • ### Memory
    • * Up to 2 MB flash. Fast access, high reliability with four-level security protection
    • * 256 KB of SRAM
    • * FlexMemory: Up to 4 KB of user-segmentable byte write/erase EEPROM for data tables/system data. In addition, up to 256KB of FlexNVM for extra program code, data or EEPROM backup
    • ### Mixed-Signal Capability
    • * Two high-speed, 16-bit analog-to-digital converters (ADCs) with configurable resolution
    • * Two 12-bit digital-to-analog converters (DACs) for analog waveform generation for audio applications
    • * Four high-speed comparators providing fast and accurate motor over-current protection by driving PWMs to a safe state
    • * Analog voltage reference provides an accurate reference to analog blocks, ADC and DAC, and replaces external voltage references to reduce system cost
    • ### Timing and Control
    • * Up to two 16-bit low-power timer PWM modules, two 8-channel motor control/general purpose/PWM timers and two 2-ch quad decoder/general purpose timers
    • * 16-bit Low Power Timer, as well as four 32-bit Periodic interrupt timers
    • * Carrier modulator timer for infrared waveform generation in remote control applications
    • * Four-channel 32-bit periodic interrupt timer provides time base for RTOS task scheduler or trigger source for ADC conversion and programmable delay block
    • ### Human-Machine Interface
    • * Hardware touch-sensing interface with up to 16 inputs. Operates in all low power modes (minimum current adder when enabled). Hardware implementation avoids software polling method. High sensitivity level allows use of overlay surfaces up to 5 mm thick
    • ### Connectivity and Communications
    • * IEEE 1588 Ethernet MAC with hardware time stamping provides precision clock synchronization for real-time industrial control
    • * Dual USB supporting High-speed (HS), with integrated HS transceiver, and Full-speed (FS), with integrated FS transceiver. Intelligent design with embedded 48 MHz oscillator allowing for FS USB crystal-less system design.
    • * One Low Power UART (LPUART), along with five standard UARTs with ISO7816 smart card support.
    • * Inter-IC Sound (I2S) serial interface for audio system interfacing
    • * Two CAN modules for industrial network bridging
    • * Three SPI and four I2C
    • ### Reliability, Safety and Security
    • * Memory protection unit provides memory protection for all masters on the cross bar switch, increasing software reliability
    • * Cyclic redundancy check engine validates memory contents and communication data, increasing system reliability
    • * Independent-clocked COP guards against clock skew or code runaway for fail-safe applications such as the IEC 60730 safety standard for household appliances
    • * External watchdog monitor drives output pin to safe state external components if watchdog event occurs
    • * System security with hardware encryption, random number generator, tamper detect with real-time clock and independent battery supply. Secure key storage with internal/external tamper detect for unsecure flash, temperature, clock, and supply voltage variations and physical attack detection

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